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基于MAX和MXene的防火不饱和聚酯树脂纳米复合材料:其性能及阻燃机理的对比研究

Fire-safe unsaturated polyester resin nanocomposites based on MAX and MXene: a comparative investigation of their properties and mechanism of fire retardancy.

作者信息

Hai Yun, Jiang Saihua, Zhou Chilou, Sun Ping, Huang Yubin, Niu Shichao

机构信息

Institute of Safety Science & Engineering, School of Mechanical and Automotive Engineering, South China University of Technology, Wushan Road 381, Guangzhou, 510641, P. R. China.

出版信息

Dalton Trans. 2020 May 14;49(18):5803-5814. doi: 10.1039/d0dt00686f. Epub 2020 Apr 17.

DOI:10.1039/d0dt00686f
PMID:32301951
Abstract

Recently, MXene, as a novel graphene-like nanomaterial, has been found to bestow good flame-retardant and smoke-suppression properties to polymers mainly due to the physical barrier effect of its 2D nanosheets. However, a comprehensive investigation of its chemical components as an important factor for these properties has not been conducted to date. To address this issue, herein, MXene (TiCT) and MAX (TiAlC) were introduced into unsaturated polyester resin (UPR) at same amounts (2.0 wt%). Their structures are different (multilayer for MXene and bulk for MAX), but the chemical components are similar; therefore, it is important to study the influence of the chemical components of MXene on the fire-safety properties of polymers. In this study, 2 wt% MAX was added to the UPR, and the peak heat release rate (PHRR), the total smoke production (TSP), and carbon monoxide production (COP) of the resulting material were reduced by 11.04%, 19.08%, and 15.79%, respectively; these findings demonstrate the important role of the chemical components of MAX: Ti exerts a catalytic attenuation effect on the UPR nanocomposites during combustion. Moreover, a better fire-safety property of the MXene/UPR nanocomposites (reduction of PHRR by 29.56%, TSP by 25.26%, and COP by 31.58%) than that of the MAX/UPR nanocomposites was achieved, which was due to the physical barrier effect of the MXene nanosheets. This study verifies that in addition to the physical barrier effect, the chemical components play a very important role in the fire safety enhancement of MXene-based nanocomposites.

摘要

最近,作为一种新型的类石墨烯纳米材料,MXene已被发现主要因其二维纳米片的物理阻隔效应而赋予聚合物良好的阻燃和抑烟性能。然而,迄今为止尚未对其化学成分作为这些性能的重要因素进行全面研究。为了解决这个问题,本文将MXene(TiCT)和MAX(TiAlC)以相同的量(2.0 wt%)引入不饱和聚酯树脂(UPR)中。它们的结构不同(MXene为多层结构,MAX为块状结构),但化学成分相似;因此,研究MXene的化学成分对聚合物消防安全性能的影响很重要。在本研究中,向UPR中添加了2 wt%的MAX,所得材料的峰值热释放速率(PHRR)、总产烟量(TSP)和一氧化碳产量(COP)分别降低了11.04%、19.08%和15.79%;这些发现证明了MAX化学成分的重要作用:Ti在燃烧过程中对UPR纳米复合材料发挥催化衰减作用。此外,MXene/UPR纳米复合材料具有比MAX/UPR纳米复合材料更好的消防安全性能(PHRR降低29.56%,TSP降低25.26%,COP降低31.58%),这是由于MXene纳米片的物理阻隔效应。本研究证实,除了物理阻隔效应外,化学成分在基于MXene的纳米复合材料的消防安全增强中也起着非常重要的作用。

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